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Electrochemically Exfoliated Graphene-Like Nanosheets for Use in Ceramic Nanocomposites

机译:用于陶瓷纳米复合材料的电化学剥离石墨烯样纳米片

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摘要

In this work, the synthesis of graphene-like nanosheets (GNS) by an electrochemical exfoliation method, their microstructural characterization and their performance as fillers in a ceramic matrix composite have been assessed. To fabricate the composites, 3 mol % yttria tetragonal zirconia (3YTZP) powders with 1 vol % GNS were processed by planetary ball milling in tert-butanol to enhance the GNS distribution throughout the matrix, and densified by spark plasma sintering (SPS). According to a thorough Raman analysis and SEM observations, the electrochemically exfoliated GNS possessed less than 10 graphene layers and a lateral size lower than 1 μm. However, they contained amorphous carbon and vacancy-like defects. In contrast the GNS in the sintered composite exhibited enhanced quality with a lower number of defects, and they were wavy, semi-transparent and with very low thickness. The obtained nanocomposite was fully dense with a homogeneous distribution of GNS into the matrix. The Vickers hardness of the nanocomposite showed similar values to those of a monolithic 3YTZP ceramic sintered in the same conditions, and to the reported ones for a 3YTZP composite with the same content of commercial graphene nanosheets.
机译:在这项工作中,已经评估了通过电化学剥离方法的石墨烯样纳芯(GNS)的合成,其作为陶瓷基质复合材料中的填料的微观结构表征及其性能。为了制造复合材料,通过在叔丁醇中的行星球铣削加工3mol%的ytTria四方氧化锆(3羟基)粉末,其中通过叔丁醇中的行星球研磨,以增强整个基质的GNS分布,并通过火花等离子体烧结(SPS)致密化。根据彻底的拉曼分析和SEM观察,电化学剥离的GNS具有小于10个石墨烯层和低于1μm的横向尺寸。然而,它们含有无定形碳和空位样缺陷。相反,烧结复合材料中的GNS表现出具有较低缺陷的增强质量,它们是波浪,半透明,厚度非常低。将所得纳米复合材料完全致密,具有GNS的均匀分布进入基质。纳米复合材料的维氏硬度显示出与在相同条件下烧结的单片3型陶瓷的Vickers,以及具有相同含量的商业石墨烯纳米液的3羟基复合物的单片3型陶瓷。

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